Basketball stand structure for trampoline
By designing an arched basketball hoop on the trampoline, and utilizing the rigid connection and load-bearing support between the arc-shaped tube and the column tube, the problem of basketball hoop swaying was solved, improving shooting accuracy and entertainment value.
Patent Information
- Application Number
- CN202320551991.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-14
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2033-03-14
AI Technical Summary
The existing trampoline basketball hoop shakes excessively during shooting, affecting shooting accuracy and the entertainment experience.
By designing an arched basketball hoop, a rigid connection is formed by inserting an arc-shaped tube into the upright tube, and combined with a load-bearing bracket to provide stability, the rigidity of the basketball hoop is enhanced.
It improves the stability of the basketball hoop, reduces wobbling, and enhances shooting accuracy and entertainment value.
Smart Images

Figure CN223930643U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of entertainment equipment technology, and in particular to a basketball hoop structure for trampolines. Background Technology
[0002] Trampolines typically consist of a frame and an elastic mesh fabric mounted on the frame. By bouncing on the mesh, users can both play and exercise. As the demand for trampolines has increased, so has the need for enhanced entertainment functionality. Therefore, our company has added basketball shooting to the original single function of trampolines.
[0003] Our company's structural design for adding basketball shooting entertainment is as follows (application number CN202121897489.9): multiple upright poles are set around the trampoline frame, and a protective net is installed around the multiple upright poles; then the basketball backboard frame is attached to the protective net with Velcro; and the basketball backboard frame has been improved to be lightweight.
[0004] However, after the product was launched on the market, customer feedback revealed the following problem: because the basketball backboard is directly glued to the protective net and is a flexible connection, the basketball backboard shakes a lot during shooting (especially because the distance between the uprights is relatively large, and when multiple uprights tighten the protective cover, the flexible wall area formed by the tightened protective cover between adjacent uprights is relatively large, so even a slight shot will result in a large shaking). Utility Model Content
[0005] The purpose of this invention is to overcome the shortcomings of the prior art and provide a basketball hoop structure for trampolines. By designing the structure, the rigid connection between the basketball hoop and the trampoline is increased, thereby solving the problem of the basketball hoop swaying during shooting.
[0006] The objective of this utility model is achieved through the following technical solution: a basketball hoop structure for trampolines, comprising:
[0007] The trampoline body includes a trampoline frame and an elastic mesh surface;
[0008] A basketball net frame includes a net panel, a basket, and multiple curved tubes; an arched structure formed by inserting the multiple curved tubes; a net panel serving as a backboard is fitted onto the arched structure; and a basket is sewn onto the net panel.
[0009] The trampoline frame has multiple upright tubes around its circumference, and the two ends of the arched structure are inserted into the upright tubes to form a basketball hoop.
[0010] Furthermore, the trampoline frame is surrounded by a protective netting consisting of multiple upright pipes.
[0011] In one advantageous extension, a mesh panel and a protective fence are designed. The mesh panel is threaded onto an arc-shaped tube with its edges bound together; the lower edge of the mesh panel is seamlessly connected to the protective fence via Velcro. The protective fence prevents balls from falling off the trampoline, and the Velcro design ensures a seamless connection between the mesh panel and the protective fence.
[0012] In a favorable extension design, the curved pipe sections are further refined. Adjacent curved pipe sections are connected via end fittings and secured with elastic pins; the curved pipe sections and the column pipe are also connected via end fittings and secured with corresponding elastic pins. This facilitates rapid installation between the curved pipe sections.
[0013] In one advantageous expansion design, the basketball hoop is described. The hoop comprises a basketball rim body, mounting rings, and bent connecting rods. The basketball rim body is connected to the mounting rings via the bent connecting rods on both sides. The mounting rings are sewn behind the mesh panel and lie in a vertical plane, while the basketball rim body lies in a horizontal plane. The hoop is a one-piece design, directly sewn to the mesh panel, facilitating rapid assembly of the entire basketball hoop structure.
[0014] In one advantageous extension, the stress distribution on the back of the basketball hoop is designed. The edges of the mesh panels are edged, and an arched structure is inserted into the edged section to achieve the installation of the mesh panels and the arched structure. The arc-shaped tubes have recesses. After multiple arc-shaped tubes form an arched structure, a load-bearing bracket is installed through the recesses on the arched structure. The load-bearing bracket is located behind the mesh panels and provides rigid support for the basketball hoop.
[0015] Furthermore, the load-bearing support was designed. The load-bearing support includes multiple load-bearing rods, a central ring, and a leather clamp head; one end of each load-bearing rod is coiled and fitted onto the central ring, and the other end is fixed with a leather clamp head; the leather clamp head clamps the recessed area after the arched structure is edged. Installation is convenient.
[0016] To facilitate understanding, the core design points of this scheme will be explained as follows:
[0017] 1. After the basketball hoop is installed in the uprights and the load-bearing supports, it forms a structure that can rigidly bear the load.
[0018] It should be noted that trampolines in the market today are no longer just for trampolines; other recreational and exercise functions have been added, such as basketball shooting (see patent number CN2021218974899). Because basketballs can easily fall off the trampoline, a safety net has been added. Since shooting requires a backboard, the backboard is directly attached in patent CN2021218974899. However, directly attaching the backboard makes it difficult for the backboard to bear weight, causing the basketball hoop to wobble significantly, which is detrimental to shooting.
[0019] Based on market feedback, this solution designs an arched basketball hoop and directly inserts the arched basketball hoop into the upright tube for a rigid and reliable fixation.
[0020] In addition, the load-bearing brackets are directly fixed to the arch structure and positioned behind the arch structure.
[0021] In this design, the force is provided by a support frame during the shot, and the support frame is fixedly connected to the arch structure, which is rigidly inserted into the column. Therefore, the basketball hoop shakes very little during the shot, which is beneficial for the shot.
[0022] II. The structure that allows for rapid assembly of the blue net frame itself, and the structure that allows for rapid installation between the blue net frame and the trampoline body;
[0023] When assembling and installing a basketball hoop: ① Insert multiple curved tube sections and splice them to form a curved structure; ② Directly insert the edging of the mesh panel with the basket frame onto the curved structure; ③ Insert the curved structure with the mesh panel onto the upright tube.
[0024] This utility model has the following advantages:
[0025] (1) The load-bearing support and the arrangement between the arched structure and the column make the basketball hoop more rigid and less prone to shaking during the shooting process;
[0026] (2) The assembly and installation of basketball hoops is very simple and quick. Attached Figure Description
[0027] Figure 1 This is a schematic diagram of the structure of this utility model;
[0028] Figure 2 This is a schematic diagram of the arc-shaped tube structure;
[0029] Figure 3 This is a schematic diagram of the stencil structure;
[0030] Figure 4 This is a schematic diagram of the structure of the mesh panel and the basketball hoop;
[0031] Figure 5 This is a schematic diagram of the basketball hoop structure.
[0032] Figure 6 A schematic diagram of an arc-shaped tube with grooves;
[0033] Figure 7 This is a schematic diagram of the arched structure connected to the load-bearing support.
[0034] Figure 8 This is a schematic diagram of the load-bearing support and the arc-shaped structure at the concave area.
[0035] Figure 9 A schematic diagram of a structure where the protective netting is directly fitted onto the upright posts;
[0036] In the diagram: 1-Trampoline body, 101-Trampoline frame, 102-Upright tube, 2-Blue net frame, 3-Net panel, 301-Edge binding, 302-Hook and loop fastener, 4-Basket, 5-Arc-shaped joint tube, 501-Elastic pin, 502-Recess, 6-Protective netting, 7-Basketball hoop body, 8-Mounting ring, 9-Bending connecting rod, 10-Force support, 11-Force rod, 12-Center ring, 13-Leather clamp head. Detailed Implementation
[0037] The present invention will be further described below with reference to the accompanying drawings, but the scope of protection of the present invention is not limited to the following description.
[0038] (Example 1)
[0039] like Figures 1-3 As shown, a basketball hoop structure for a trampoline includes a trampoline body 1 and a net frame 2; the trampoline body 1 has a trampoline frame 101, and the trampoline frame 101 has an elastic net surface on its horizontal plane; the edge of the trampoline frame 101 has multiple upright tubes 102 in the vertical direction, the multiple upright tubes 102 tighten the protective netting 6, and the net frame 2 is inserted into two adjacent upright tubes 102 to form a structure similar to a basketball hoop;
[0040] Furthermore, for the basketball net frame 2: multiple arc-shaped tubes 5 are inserted to form an arch structure; the edging 301 of the mesh panel 3 with the basket 4 sewn on is inserted into the arch structure; the two ends of the arch structure are inserted into the upper ends of the corresponding column tubes 102.
[0041] In the blue net frame 2 of the above scheme, the basket 4 is equivalent to a shooting hoop, and the backboard 3 is equivalent to a backboard. Since the backboard 3 is flexible, it is taut by an arched structure formed by multiple arc-shaped tubes 5. Compared with the scheme of attaching the basketball backboard to the protective net (application number 202121897489.9), the arc-shaped structure in this scheme is rigidly connected to the upright tube 102, making it more stable and robust. During the shooting process, the blue net frame 2 does not sway (and the swaying of the basket 4 is also very small), which can improve the shooting accuracy and thus increase the entertainment value.
[0042] In this embodiment, the structure of multiple arc-shaped structures 5 is designed to facilitate rapid assembly into an arched structure. One end of each arc-shaped tube 5 is larger than the other, and the large and small ends of adjacent arc-shaped tubes 5 are interlocked and locked together via spring pins 501 and pin holes. When assembling the arched structure with the column rod 302: one end of the arched structure is the smaller end and the other end is the larger end. The smaller end can be locked to the column rod 302 via corresponding spring pins 501 and pin holes, while the larger end cannot be locked together via spring pins 501 and pin holes. Therefore, both ends of the arc-shaped tube 5 corresponding to the end of the arched structure need to be smaller ends to achieve interlocking and locking.
[0043] In this embodiment, the mesh panel 3 is specifically designed. ① The basketball hoop 4 is directly sewn onto the mesh panel 3, which can be easily and conveniently fitted onto the arched structure; ② The edges of the mesh panel 3 have binding 301, which is inserted into the arched structure for quick installation; ③ The lower edge of the mesh panel 3 has Velcro 302, which is glued to the protective netting 6 to achieve a seamless connection, effectively preventing the basketball from flying off the trampoline.
[0044] In this embodiment, three basketball hoops 4 are sewn onto the mesh panel 3. The three basketball hoops 4 are spaced apart and located at different heights, which facilitates multiple people shooting together.
[0045] In this embodiment, the protective netting 6 can be a certain distance from the upright post 102. Figure 1 As shown, Figure 1 For line drawings, Figure 2 (This is a picture of the actual object). Of course, the protective netting 6 can also be directly fitted onto the post pole 102 (e.g., Figure 9 As shown, Figure 9 (For line drawings).
[0046] (Example 2)
[0047] The net 3 in Example 1 is flexible and cannot provide good force support for throwing. Therefore, this example, based on Example 1, further provides force support for the net 3.
[0048] Specifically, such as Figures 6-8 As shown, recesses 502 are designed on the arc-shaped tube 5; the arched structure formed by inserting multiple arc-shaped tubes 5 has multiple recesses 502. After the mesh plate 3 is fitted onto the arched structure, the end clamps of each edge of the umbrella-shaped support 10 are fixed at the recesses 502; and the support 10 is located behind the mesh plate 3.
[0049] The advantage of the recess 502 design is that when the arched structure is inserted into the edge 301 of the net 3, the edge of the support 10 is pressed against the surface of the edge 301, and the end of the support 10 is pressed against the recess 502. After installation, it can prevent the end of the support 10 from sliding along the arched structure, ensuring the structural reliability of the support 10 after it is opened, making the support 10 equivalent to a rigid board frame that is pulled open; during the throwing process, it can provide sufficient reaction force for the ball.
[0050] In this embodiment, reference Figure 7 and Figure 8 The force-bearing support 10 is designed to include multiple force-bearing rods 11, a central ring 12, and a leather clamp head 13. One end of the force-bearing rod 11 is curled and sleeved on the central ring 12, and the other end is fixed with a leather clamp head 13. The leather clamp head 13 clamps the arched structure at the recess 502 after the edging is wrapped.
[0051] The purpose of the leather clamp head 13 design is to provide a flexible connection between the force-bearing support 10 and the arched structure. During the ball throwing process on the trampoline, the force-bearing support 10 needs to provide a certain reaction force to the ball, but the reaction force cannot be too large; because without a reaction force, the ball will not be under force when thrown and will not easily fall into the basket; if the reaction force is too large, if the throw is not good, the ball can easily fly out of the trampoline's protective netting 6, making it very inconvenient to retrieve the ball.
[0052] Furthermore, the leather clamp head 12 is belt-shaped, with one end fixed to the end of the force-bearing rod 11, and the other end passing around the recess 502 and then being locked by bolts. At the bolt installation location, holes are drilled in the belt clamp head 12 and buckles are installed, and then the bolts are installed by passing through the buckles.
[0053] (Example 3)
[0054] Based on Embodiment 1 and Embodiment 2, the basket 4 was designed to ensure that the basket 4 is a single piece.
[0055] Specifically, the basketball hoop 4 includes a basketball rim body 7, a mounting ring 8, and a bending connecting rod 9. The basketball rim body 7 is connected to the mounting ring 8 via the bending connecting rods 9 on both sides. The basketball hoop 4 is a single piece, fixed to the mesh panel 3 by sewing, which is convenient; during sewing, only the mounting ring 8 needs to be sewn onto the mesh panel 3, so that it is located in the vertical plane, and the basketball rim body 7 is located in the horizontal plane.
[0056] In this embodiment, the bending connecting rod 9 is welded to the mounting ring 8 and the basketball hoop body 7. Alternatively, the bending connecting rod 9 can be detachably connected to the mounting ring 8 and the basketball hoop body 7. However, if the mounting ring 8, the basketball hoop body 7, and the bending connecting rod 9 are connected in a manner where one is in the vertical plane and the other is in the horizontal plane, this is still within the protection scope of this solution.
[0057] The above embodiments only illustrate preferred implementation methods, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of this utility model patent. It should be noted that those skilled in the art can make several modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model.
Claims
1. A basketball hoop structure for trampolines, characterized in that: include: The trampoline body (1) includes a trampoline frame (101) and an elastic mesh surface; The basketball net frame (2) includes a net plate (3), a basket (4), and multiple arc-shaped tubes (5); the multiple arc-shaped tubes (5) are inserted to form an arched structure; the net plate (3) serving as a backboard is fitted on the arched structure; the basket (4) is sewn onto the net plate (3). The trampoline frame (101) has multiple upright tubes (102) at its edge, and the two ends of the arched structure are inserted into the upright tubes (102) to form a basketball hoop.
2. The basketball hoop structure for a trampoline according to claim 1, characterized in that: The trampoline frame (101) is also surrounded by a protective net (6) by multiple upright pipes (102).
3. The basketball hoop structure for a trampoline according to claim 2, characterized in that: The mesh plate (3) is threaded onto the arc-shaped tube (5) through its edge banding (301); The lower edge of the mesh panel (3) is seamlessly connected to the protective fence (6) via Velcro (302).
4. The basketball hoop structure for a trampoline according to claim 1, characterized in that: Adjacent arc-shaped tube sections (5) are connected by inserting large and small ends and locked by elastic pins (501); the arc-shaped tube section (5) and the column tube (102) are also connected by inserting large and small ends and locked by corresponding elastic pins (501).
5. A basketball hoop structure for a trampoline according to claim 1, characterized in that: The basketball hoop (4) includes a basketball hoop body (7), a mounting ring (8), and a bent connecting rod (9); The basketball hoop body (7) is connected to the mounting ring (8) via the bent connecting rods (9) on both sides; the mounting ring (8) is sewn onto the mesh plate (3) and is located in the vertical plane, at which time the basketball hoop body (7) is located in the horizontal plane.
6. A basketball hoop structure for a trampoline according to claim 5, characterized in that: The bent connecting rod (9) is welded to the mounting ring (8) and the basketball hoop body (7).
7. A basketball hoop structure for a trampoline according to claim 4, characterized in that: The edge of the mesh panel (3) is wrapped, and the arched structure is inserted into the wrapped edge to realize the installation of the mesh panel (3) and the arched structure; The arc-shaped tube (5) has a recess (502); after multiple arc-shaped tubes (5) form an arch structure, a load-bearing bracket (10) is installed through the recess (502) on the arch structure. The load-bearing support (10) is located behind the mesh plate (3) and provides rigid load-bearing for the basket (4).
8. A basketball hoop structure for a trampoline according to claim 7, characterized in that: The force-bearing support (10) includes multiple force-bearing rods (11), a central ring (12), and a leather clamp head (13). One end of the force-bearing rod (11) is curled and sleeved on the central ring (12), and the other end is fixed with a leather clamp head (13). The leather clamp head (13) is located in the recess (502) after the arch structure is fitted with a edging.
Citation Information
Patent Citations
Interesting trampoline with basketball stand
CN215781188U